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大西洋鲑(Salmo salar L.)的适应性与等位酶和微卫星位点杂合性之间的相关性

Correlations between fitness and heterozygosity at allozyme and microsatellite loci in the Atlantic salmon, Salmo salar L.

作者信息

Borrell Y J, Pineda H, McCarthy I, Vázquez E, Sánchez J A, Lizana G B

机构信息

Departamento de Biología Funcional, Area de Genética, Universidad de Oviedo, Julián Clavería s/n 33071 Oviedo, Asturias, Spain.

出版信息

Heredity (Edinb). 2004 Jun;92(6):585-93. doi: 10.1038/sj.hdy.6800477.

Abstract

The relationship between heterozygosity at genetic markers (six allozyme and eight microsatellite loci), and fluctuating asymmetry (FA), length and weight was investigated in two samples of Atlantic salmon (Salmo salar L.) with different timings of first active feeding (early (EA) and late (LA) salmon). This trait had previously been related to fitness. EA fish show smaller values of FA, are longer, heavier and are more heterozygous at allozyme loci than are conspecific LA fish. Also within both samples, heterozygosity at allozyme loci was inversely related to FA and was positively related to weight and length. However, no significant differences in microsatellite diversity (heterozygosity and mean d2 measurements) were observed between samples (EA vs LA). Furthermore, no association was observed between the variability at microsatellite loci and FA, weight or length within each sample. These results suggest that allozyme loci, in themselves, influence fitness components, rather than associations arising from associative overdominance.

摘要

在两个首次主动摄食时间不同的大西洋鲑(Salmo salar L.)样本(早期(EA)和晚期(LA)鲑鱼)中,研究了遗传标记(六个等位酶和八个微卫星位点)的杂合性与波动不对称性(FA)、体长和体重之间的关系。该性状此前已被证明与适应性有关。与同种的LA鲑鱼相比,EA鲑鱼的FA值更小,体长更长,体重更重,并且在等位酶位点上的杂合性更高。此外,在两个样本中,等位酶位点的杂合性均与FA呈负相关,与体重和体长呈正相关。然而,样本之间(EA与LA)在微卫星多样性(杂合性和平均d2测量值)方面未观察到显著差异。此外,在每个样本中,微卫星位点的变异性与FA、体重或体长之间均未观察到关联。这些结果表明,等位酶位点本身会影响适应性成分,而非由关联超显性产生的关联。

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